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Deadline-aware concentration of synchrophasor data: An optimal stopping approach

机译:截止日期感知的同步相量数据集中:一种最佳的停止方法

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Deadline-aware concentration of synchrophasor data from spatially dispersed phasor measurement units (PMUs) is studied, with an objective to find the optimal policy for the wait time of a phasor data concentrator (PDC), such that the deadline-constrained synchrophasor data delivery from PMUs via PDC to control center achieves maximal expected throughput. When the statistical information on the communication latency from PMUs to PDC and from PDC to control center is known, the wait time problem is cast as a continuous-time optimal stopping problem. The optimal stopping policy is then shown to exist, and then obtained by utilizing the infinitesimal look-ahead rule under mild conditions. Further, the scenarios with substation PDCs or super PDCs are also considered. The dynamic wait time policy obtained by using the proposed optimal stopping approach, in comparison with two fixed wait time policies, results in significant improvement, as revealed through simulation studies.
机译:研究了来自空间分散相量测量单元(PMU)的同步相量数据的截止时间集中,目的是找到相量数据集中器(PDC)的等待时间的最佳策略,以使截止时限限制的同步相量数据从通过PDC到达控制中心的PMU可实现最大的预期吞吐量。当已知有关从PMU到PDC以及从PDC到控制中心的通信等待时间的统计信息时,等待时间问题被转换为连续时间最佳停止问题。然后证明存在最佳停止策略,然后通过在温和条件下利用无限小超前规则来获得最佳停止策略。此外,还考虑了具有变电站PDC或超级PDC的方案。仿真研究表明,与两种固定的等待时间策略相比,使用建议的最佳停止方法获得的动态等待时间策略可带来显着的改善。

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